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    • 22. 发明授权
    • Broadcasting data receiving apparatus
    • 广播数据接收装置
    • US07903174B2
    • 2011-03-08
    • US11508464
    • 2006-08-23
    • Kenichi IshidaMichio MiyanoTamiya Tanaka
    • Kenichi IshidaMichio MiyanoTamiya Tanaka
    • H04N11/00H04N7/00
    • H04N5/4401H04N5/44513H04N21/4348H04N21/4586H04N21/4882H04N21/6547
    • A broadcasting data receiving apparatus which can receive broadcasting data and update software by using software update data received as the broadcasting data includes a receiving portion operable to receive broadcasting data, a video/audio processing portion operable to process video data included in the received broadcasting data for video display and audio data included in the received broadcasting data for audio output based on stored software, an operation input portion operable to receive a user operation, and a control portion operable to (i) control the processing in the video/audio processing portion, (ii) perform software update processing on a necessary component by using received software update data if the received broadcasting data includes the software update data, and (iii) perform minimal display processing or minimal audio output processing in the video/audio processing portion if the operation input portion receives a user operation to start the apparatus during execution of the update processing.
    • 可以通过使用作为广播数据接收的软件更新数据来接收广播数据和更新软件的广播数据接收装置包括可操作以接收广播数据的接收部分,可操作以处理包括在所接收的广播数据中的视频数据的视频/音频处理部分 用于基于存储的软件的用于音频输出的所接收的广播数据中包括的视频显示和音频数据,用于接收用户操作的操作输入部分和可操作以(i)控制视频/音频处理部分中的处理的控制部分 (ii)如果所接收的广播数据包括软件更新数据,则通过使用接收到的软件更新数据对所需组件执行软件更新处理,以及(iii)在视频/音频处理部分中执行最小显示处理或最小音频输出处理,如果 操作输入部分在执行期间接收用于启动设备的用户操作 小心更新处理。
    • 24. 发明申请
    • Misjudgment correction circuit and optical disk drive
    • 误判修正电路和光盘驱动器
    • US20090279396A1
    • 2009-11-12
    • US12385381
    • 2009-04-07
    • Shinya NouchiKimimasa SenbaKenichi Ishida
    • Shinya NouchiKimimasa SenbaKenichi Ishida
    • G11B7/00
    • G11B7/0053
    • Disclosed herein is a misjudgment correction circuit, including, an edge detection section configured to detect, in a binarized full addition signal obtained by adding first and second signals of the same or opposite polarity, edges at which the logic value of the binarized signal changes, a push-pull signal acquisition section configured to acquire a binarized push-pull signal obtained by subtracting the second signal from the first signal, a majority decision calculation section configured to acquire, in chronologic order, a plurality of logic values of the push-pull signal between the two adjacent edges so as to determine, by a majority decision, the more numerous of the two logic values, and a wave correction section configured to correct the push-pull signal between the edges to the more numerous logic value determined by the majority decision calculation section.
    • 这里公开了一种错误校正电路,包括:边缘检测部分,被配置为在通过将相关或相反极性的第一和第二信号相加或者相反的二极化信号的逻辑值改变的边缘进行二值化的全相加信号中检测, 推挽信号获取部,被配置为获取通过从第一信号中减去第二信号而获得的二值化推挽信号;多数决定计算部,被配置为按时间顺序获取推挽的多个逻辑值 在两个相邻边缘之间的信号,以便通过多数决定来确定两个逻辑值中的更多个,以及被配置为将边缘之间的推挽信号校正到由多个逻辑值确定的更多的逻辑值的波形校正部分 多数决策计算部分。
    • 25. 发明申请
    • CHANNEL DETECTING APPARATUS AND TUNER TESTING APPARATUS COMPRISING SAME
    • 通道检测装置和调谐器测试装置
    • US20090227220A1
    • 2009-09-10
    • US11719467
    • 2005-09-29
    • Kenichi IshidaHideharu Tsunemoto
    • Kenichi IshidaHideharu Tsunemoto
    • H04B1/18
    • H03J1/0091H04B17/382
    • An improved channel detecting apparatus is provided for detecting a channel. The channel detecting apparatus comprises a channel search circuit (3). When a certain frequency is detected through a search sweep using a frequency sweep signal for a channel, the channel search circuit determines whether or not the detected frequency falls within a frequency range associated with the channel. The channel search circuit (3) comprises a controller (32). The controller can comprise a sweep stop timing circuit (320) and a sweep resume timing circuit (322). The sweep stop timing circuit (320) stops the search sweep when the output of the channel is generated in response to the search sweep using a frequency sweep signal. The sweep resume timing circuit (322) resumes the search sweep by determining that the detected frequency does not fall within the frequency range associated with the channel when a level of the output of the channel generated in response to the frequency sweep signal fixed at the detected frequency is below a threshold.
    • 提供了一种用于检测信道的改进的信道检测装置。 频道检测装置包括频道搜索电路(3)。 当通过使用频道的频率扫描信号的搜索扫描来检测到特定频率时,信道搜索电路确定检测到的频率是否落入与该信道相关联的频率范围内。 频道搜索电路(3)包括控制器(32)。 控制器可以包括扫描停止定时电路(320)和扫描恢复定时电路(322)。 当使用频率扫描信号响应于搜索扫描产生信道的输出时,扫描停止定时电路(320)停止搜索扫描。 扫描恢复定时电路(322)通过确定检测到的频率不在与频道相关联的频率范围内,当响应于检测到的频率扫描信号而产生的频道的输出电平时,恢复搜索扫描 频率低于阈值。
    • 26. 发明授权
    • Recognizing a print inhibit image pattern using image data converted for fast recognition
    • 使用转换为快速识别的图像数据来识别打印禁止图像图案
    • US07076096B2
    • 2006-07-11
    • US09842182
    • 2001-04-26
    • Takeshi KunimasaToru HadaKenichi IshidaMasao MoritaYozo YamaguchiMasami KurataHiroshi SekineHiroyuki KawanoTakanobu Otsubo
    • Takeshi KunimasaToru HadaKenichi IshidaMasao MoritaYozo YamaguchiMasami KurataHiroshi SekineHiroyuki KawanoTakanobu Otsubo
    • G06K9/00
    • G06K9/46
    • Disclosed is an image processing device capable of recognizing a specific image such as an image which is prohibited from printing at high speed and, moreover, without being influenced by an image forming process. A drawing command analysis unit analyzes a drawing command received by a drawing command input unit and sends an analysis result to both an output image data generation unit and a recognition image data generation unit. The output image data generation unit generates output image data adapted to an image formation device in accordance with the drawing command. In parallel with the operation, the recognition image data generation unit generates recognition image data adapted to a recognition unit in accordance with the drawing command. The recognition unit performs a process of recognizing a specific image by using the recognition image data. The recognition image data may have a data format, resolution, a color space, and the number of bits per pixel which are different from those of the output image data. When the specific image is recognized by the recognition unit, the output image data generation unit stops outputting the output image data.
    • 公开了一种图像处理装置,其能够识别诸如禁止高速打印的图像的特定图像,而且不受图像形成处理的影响。 绘图命令分析单元分析由绘制命令输入单元接收的绘制命令,并将分析结果发送到输出图像数据生成单元和识别图像数据生成单元。 输出图像数据生成单元根据绘制命令生成适用于图像形成装置的输出图像数据。 与操作并行,识别图像数据生成单元根据绘制命令产生适合于识别单元的识别图像数据。 识别单元通过使用识别图像数据执行识别特定图像的处理。 识别图像数据可以具有不同于输出图像数据的数据格式,分辨率,颜色空间和每像素的位数。 当识别单元识别出特定图像时,输出图像数据生成单元停止输出输出图像数据。
    • 28. 发明授权
    • Vehicle load control device
    • 车辆负载控制装置
    • US08392050B2
    • 2013-03-05
    • US12586433
    • 2009-09-22
    • Takashi AraiKenichi Ishida
    • Takashi AraiKenichi Ishida
    • G01M17/00
    • B60R16/033G01R31/3606H01M10/42H02J7/0032
    • A vehicle load control device comprises a battery that supplies power to an electrical load of the vehicle; a battery sensor that detects a consumption state of the battery; and a control unit that cuts off power supply to the electrical load when the consumption state of the battery reaches a predetermined state. The control unit detects a consumption state of the battery at a relatively short first time interval, in a case where a consumption amount of the battery after the engine stops is greater than or equal to a predetermined value, and detects a consumption state of the battery at a relatively long second time interval, in a case where the consumption amount of the battery after the engine stops is less than a predetermined value, and cuts off power supply to the electrical load depending on the consumption state of the battery detected by the battery sensor.
    • 一种车辆负载控制装置,包括向车辆的电力负载供电的电池; 电池传感器,其检测电池的消耗状态; 以及控制单元,其在电池的消耗状态达到预定状态时切断对电负载的电力供应。 在发动机停止后的电池的消耗量大于或等于预定值的情况下,控制单元以相对较短的第一时间间隔检测电池的消耗状态,并且检测电池的消耗状态 在相对长的第二时间间隔,在发动机停止后的电池的消耗量小于预定值的情况下,根据由电池检测到的电池的消耗状态来切断对电负载的电力供应 传感器。
    • 29. 发明申请
    • Vehicle load control device
    • 车辆负载控制装置
    • US20100082198A1
    • 2010-04-01
    • US12586433
    • 2009-09-22
    • Takashi AraiKenichi Ishida
    • Takashi AraiKenichi Ishida
    • G06F7/00
    • B60R16/033G01R31/3606H01M10/42H02J7/0032
    • A vehicle load control device comprises a battery that supplies power to an electrical load of the vehicle; a battery sensor that detects a consumption state of the battery; and a control unit that cuts off power supply to the electrical load when the consumption state of the battery reaches a predetermined state. The control unit detects a consumption state of the battery at a relatively short first time interval, in a case where a consumption amount of the battery after the engine stops is greater than or equal to a predetermined value, and detects a consumption state of the battery at a relatively long second time interval, in a case where the consumption amount of the battery after the engine stops is less than a predetermined value, and cuts off power supply to the electrical load depending on the consumption state of the battery detected by the battery sensor.
    • 一种车辆负载控制装置,包括向车辆的电力负载供电的电池; 电池传感器,其检测电池的消耗状态; 以及控制单元,其在电池的消耗状态达到预定状态时切断对电负载的电力供应。 在发动机停止后的电池的消耗量大于或等于预定值的情况下,控制单元以相对较短的第一时间间隔检测电池的消耗状态,并且检测电池的消耗状态 在相对长的第二时间间隔,在发动机停止后的电池的消耗量小于预定值的情况下,根据由电池检测到的电池的消耗状态来切断对电负载的电力供应 传感器。